SIMBAD references

2016ApJ...823..146B - Astrophys. J., 823, 146 (2016/June-1)

Nustar discovery of a cyclotron line in the accreting X-ray pulsar IGR J16393-4643.

BODAGHEE A., TOMSICK J.A., FORNASINI F.M., KRIVONOS R., STERN D., MORI K., RAHOUI F., BOGGS S.E., CHRISTENSEN F.E., CRAIG W.W., HAILEY C.J., HARRISON F.A. and ZHANG W.W.

Abstract (from CDS):

The high-mass X-ray binary and accreting X-ray pulsar IGR J16393-4643 was observed by the Nuclear Spectroscope Telescope Array in the 3-79 keV energy band for a net exposure time of 50 ks. We present the results of this observation which enabled the discovery of a cyclotron resonant scattering feature with a centroid energy of {29.3}_{-1.3}^{+1.1} keV. This allowed us to measure the magnetic field strength of the neutron star for the first time: B=(2.5±0.1) x 1012 G. The known pulsation period is now observed at 904.0±0.1 s. Since 2006, the neutron star has undergone a long-term spin-up trend at a rate of {dot}P=-2×{10}^{-8} s/s (-0.6 s per year, or a frequency derivative of {dot}ν=3×{10}^{-14} Hz/s). In the power density spectrum, a break appears at the pulse frequency which separates the zero slope at low frequency from the steeper slope at high frequency. This addition of angular momentum to the neutron star could be due to the accretion of a quasi-spherical wind, or it could be caused by the transient appearance of a prograde accretion disk that is nearly in corotation with the neutron star whose magnetospheric radius is around 2 x 108 cm.

Abstract Copyright: © 2016. The American Astronomical Society. All rights reserved.

Journal keyword(s): accretion, accretion disks - gamma-ray burst: general - stars: neutron - X-rays: binaries - X-rays: individual: IGR J16393-4643

Simbad objects: 9

goto Full paper

goto View the references in ADS

To bookmark this query, right click on this link: simbad:2016ApJ...823..146B and select 'bookmark this link' or equivalent in the popup menu